|Numéro de publication||US7711604 B1|
|Type de publication||Octroi|
|Numéro de demande||US 09/540,035|
|Date de publication||4 mai 2010|
|Date de dépôt||31 mars 2000|
|Date de priorité||8 juil. 1997|
|État de paiement des frais||Payé|
|Autre référence de publication||US8150735, US9684916, US9754302, US20070208625, US20120330771, US20150012343, US20160055558, WO2001037164A2, WO2001037164A8|
|Numéro de publication||09540035, 540035, US 7711604 B1, US 7711604B1, US-B1-7711604, US7711604 B1, US7711604B1|
|Inventeurs||Jay S. Walker, Peter Kim, James A. Jorasch, Magdalena Mik, Daniel E. Tedesco, Russell Pratt Sammon, Andrew P. Golden, Raymod J. Mueller, Keith Bemer, Kathleen Van Luchene|
|Cessionnaire d'origine||Walker Digital, Llc|
|Exporter la citation||BiBTeX, EndNote, RefMan|
|Citations de brevets (140), Citations hors brevets (118), Référencé par (71), Classifications (19), Événements juridiques (7)|
|Liens externes: USPTO, Cession USPTO, Espacenet|
This application claims the benefit of original U.S. application Ser. No. 60/165,435, filed Nov. 15, 1999, entitled “Uniseller Internet Pricing”, the content of which is incorporated by reference herein for all purposes.
This application is a continuation-in-part of U.S. patent application Ser. No. 08/889,503, filed Jul. 8, 1997, now U.S. Pat. No. 6,249,772 entitled “Systems and Methods Wherein a Buyer Purchases a Product at a First Price and Acquires the Product from a Merchant that Offers the Product for Sale at a Second Price” and is a continuation in part of U.S. patent application Ser. No. 08/997,170, filed Dec. 22, 1997, now U.S. Pat. No. 6,356,878 entitled “Conditional Purchase Offer Buyer Agency System”, and is a continuation in part of U.S. patent application Ser. No. 09/220,191, filed Dec. 23, 1998, now U.S. Pat. No. 7,386,508 entitled “Method and Apparatus for Facilitating a Transaction Between a Buyer and One Seller, and is a continuation in part of U.S. patent application Ser. No. 09/337,906, filed Jun. 22, 1999, now U.S. Pat. No. 6,754,636 entitled “Purchasing Systems and Methods Wherein a Buyer Takes Possession at a Retailer of a Product Purchased Using a Communication Network”, and is a continuation in part of U.S. patent application Ser. No. 09/359,265, filed Jul. 22, 1999, now pending, entitled “System and Method for Facilitating and Managing the Sale of Customized Travel Product Restrictions”, and is a continuation of U.S. patent application Ser. No. 09/388,723, filed Sep. 2, 1999, now abandoned, entitled “Purchasing Systems and Methods Wherein a Buyer Takes Possession at a Retailer of a Product Purchased Using a Communication Network”, the contents of which are incorporated by reference herein for all purposes.
The present invention relates to systems for selling products to customers. More specifically, the present invention relates to a system for selling a product to a customer based on a flexible product description provided by the customer.
According to conventional retail pricing systems, a particular product is offered to all potential customers for a single price. Therefore, a conventional retailer endeavors to determine an “optimal” single price for a product which will generate more profit than any other single price.
Shortcomings exist even if a conventional retailer succeeds in determining an “optimal” price. Specifically, profit generated by sales at an “optimal” price will likely be less than a theoretical maximum profit, becuase some customers will be willing to pay more than the “optimal” price for the product. In this regard, the theoretical maximum profit is a profit resulting from charging each customer a maximum price he is willing to pay. Profit may also fall short of the theoretical maximum because no profit will be obtained from potential customers who are willing to pay more than the retailer's cost for the product but are unwilling to pay the “optimal” price. Due to these and other shortcomings, retailers have experimented with alternative pricing systems intended to generate a profit closer to the theoretical maximum.
Individualized bargaining is one such alternative system. In individualized bargaining, a retailer or a retailer's agent individually negotiates with each potential customer in an attempt to extract a highest price from each customer. However, associated transaction costs incurred by the retailer increase in proportion to the number of transactions. Accordingly, individualized bargaining is not desirable for retailers having more than a few customers, since the associated transaction costs would outweigh any resulting increase in profit from sales.
In view of the foregoing, what is needed is a pricing system for increasing a retailer's profit without incurring unacceptable transaction costs.
Improvements are also needed in other types of conventional pricing systems. For instance, conventional systems for discounting prices create several problems for retailers. According to these conventional systems, a retailer reduces a price of a product from an original price to a lower, discounted price to achieve some goal, such as reducing excess inventory of the product.
As described above with respect to retail pricing, some customers who buy the product for the discounted price may have been willing to buy the product for a higher price, and the retailer therefore loses potential profit. Individualized bargaining, as also described above, can be used to reduce these effects. However, in a vast majority of situations, individualized bargaining involves unacceptable transaction costs. Individualized bargaining also fails to address other problems caused by conventional discount pricing systems, such as price dilution and brand dilution.
Generally, price dilution describes a situation in which a reduction of a product's price decreases demand for the product at a higher price. In more detail, discounting a price of a product causes potential customers to believe that the discounted price is the “correct” price of the product, and therefore the customers become unwilling to accept any higher price for the product. Accordingly, conventional discount pricing systems can negatively affect future profits generated by a product.
Conventional discount pricing systems can also lead to brand dilution. Brand dilution refers to a reduction in the prestige of a brand in the minds of consumers. In this regard, conventional publicized price discounts for a product of a particular brand tend to reduce the amount of prestige which consumers attribute to the brand. Since brand prestige, or “goodwill”, is a valuable asset vigorously protected by successful manufacturers (e.g., via trademark protection), these manufacturers are reluctant to allow retailers to discount prices for their products or to advertise the discounted prices. As a result, it is difficult for retailers to reduce excess inventory of these products.
Certain industries have attempted to address the foregoing deficiencies in conventional pricing systems. For example, the airline industry attempts to set prices for airline tickets based on speculated demand of individual customers. In this regard, each customer is categorized as a leisure traveler or a business traveler based on when a ticket is purchased. For example, a customer who buys a ticket for a flight more than twenty-one days before the flight is categorized as a leisure traveler and a customer who buys a ticket less than twenty-one days before the flight is categorized as a business traveler. Tickets for the flights are priced according to the categorization—lower prices for leisure travelers and higher prices for business travelers.
In view of the foregoing, two customers who submit identical itineraries to a travel agent may pay vastly different prices for tickets to identical flights, if the tickets are bought at different times. Such a result is perceived as unfair by customers. Moreover, a business traveler who purchases a ticket to a flight more than twenty-one days before a flight is categorized as a leisure traveler and therefore pays much less than she is willing to pay, resulting in lost revenue to the airline providing the flight. Accordingly, airline pricing fails to adequately address the deficiencies in conventional pricing systems.
Accordingly, what is also needed is a system for discounting prices which reduces priced dilution and brand dilution, and which is perceived as fair to customers.
In consideration of the above needs, Applicants have discovered that customer demand for a product can be approximately quanitifed based on a customer's specification of desired product values. Applicants have also discovered that retailers are willing to reduce prices in return for customer flexibility in sale terms. In addition, Applicants have invented a system to use these discoveries to efficiently charge different prices to different customers in order to optimize profits while being fair to customers, and to discount prices while minimizing losses, price dilution, brand dilution and perceived unfairness.
The present invention addresses the foregoing by providing, in one aspect, a system in which a sale price is determined based on a product description, and the sale price is transmitted to a customer. In addition, no specific product is identified to the customer as a particular product that will be sold to the customer before an agreement to purchase a product for the sale price is received from the customer. Accordingly, the customer is not guaranteed what specific product will be purchased before an agreement to purchase a product for the sale price is received from the customer.
It should be understood that the customer will agree to the purchase if the customer is willing to accept, in return for the sale price, any product conforming to the product description. Both the customer and retailer benefit as a result of the foregoing system. The customer can receive lower prices in exchange for flexible description parameters and may also receive discounts that would normally not be advertised to the general public for fear of price and brand dilution. The retailer is able to evaluate a customer's individual demand based on the received description and determine a sale price accordingly, thereby reducing losses associated with the single-price systems described in the background. Although the inventive system may result in the sale of a product to two different customers for two different sale prices, the system is perceived as fair by both customers because a higher-paying customer likely agreed to a less flexible product description than a lower-paying customer, and neither customer would have agreed to the other's product description and sale price. The product descriptions received from customers also allow a retailer to determine what condition values are important to customers and to purchase and price regular inventory accordingly.
In addition, the foregoing features allow a retailer to mask product discounts. For example, a retailer may with to reduce inventory of a product by selling the product at a discounted price. To mask the discount, the retailer chooses undesirable purchase terms under which to sell the product, such as pickup at a faraway location, even if the product is available at a closer location. As a result, the customer believes that the discount is attributable to the undesirable terms, rather than to the product quality or to decreased demand. Accordingly, price and brand dilution are minimized.
In other embodiments, a product description is determined based on a sale price. According to some of these embodiments, a retailer receives a first sale price from a first customer, determines a first product description based on the first sale price, and transmits the first product description to the first customer. Similarly, the retailer receives a second sale price from a second customer which is lower than the first sale price, determines a second product description based on the second sale price, and transmits the second product description to the second customer. If a product exists which conforms to both the first product description and the second product description, the retailer may sell the product to the first customer for the first sale price and to the second customer for the second sale price. Even though the two customers pay different sale prices for the same product, the two customers will likely perceive the system as fair because each is agreeing to a different product description corresponding to their sales price. In this regard, the retailer may determine and transmit a broad product description based on the lower second sale price to give the second customer an impression that the product was sold for the second sale price only because the second customer agreed to a broad product description. This latter method is intended to mask any discount reflected by the lower sale price, thereby reducing perceived unfairness and allowing a retailer to sell a product at a discounted price while minimizing price and brand dilution.
The present invention also addresses the problems discussed above by providing, in one aspect, a system in which a product description is received and a product is selected, with a sale price of a particular selected product being a first sale price if the description is a first description and being a second sale price if the description is a second description.
The foregoing aspect provides a system by which a same product may be sold to different customers for different prices. Such pricing may be desirable if a product description received from one customer indicates a greater demand for a particular product than a product description received from another customer. It should be noted that, in contrast to the airline pricing systems discussed in the background, a system according to this aspect is perceived as fair because different product descriptions are received from each customer, and because each customer would likely not have been willing to purchase a product conforming to the other customer's description for the other customer's sale price.
With these and other advantages and features of the invention that will become hereinafter apparent, the nature of the invention may be more clearly understood by reference to the following detailed description of the invention, the appended claims and to the several drawings attached thereto.
To ensure clarity of the following detailed description, set forth below are definitions of terms used herein. The scope of the present invention is not to be deemed limited by the definitions.
Condition: a category of values which are descriptive of a product (see definition below) and/or a transaction. Examples include Manufacturer, Features, and Pickup Location.
Condition value: a specific value corresponding to a condition. Using the above examples of conditions, corresponding condition values may be “Sony”, “27 in.”, and “New York”.
Conforming product: a specific product deemed to meet the requirements of a product description or a sale price.
Customer: any person, group of people, or other entity that patronizes a retailer (see definition below) and who purchases products from the retailer.
Mutually-exclusive condition: a condition, such as Manufacturer, for which a conforming product possesses only one condition value. In order for a product to conform to a product description, the product must include only one condition value for each mutually-exclusive condition in the product description. Therefore, when mutually exclusive condition values are added to a product description, a number of products conforming to the product description usually increases.
Mutually-inclusive condition: a condition, such as Features, for which a conforming product may contain more than one condition value. In order for a product to conform to a product description, the product must include each mutually-inclusive condition value in the product description. Therefore, when mutually-inclusive condition values are added to a product description, a number of products conforming to the product description usually decreases.
Product: a specific good or service, usually identified by a make and model number. Identical products sold by a retailer may be assigned an identical product identifier such as a Uniform Product Code (“UPC”) or Stock Keeping Unit (“SKU”), while different products are usually assigned different product identifiers.
Product category: a classification of a product, or the general type of product a customer desires. Examples include Standard Television, Home Computer, and Airline Ticket.
Product description: a set of condition values that describes a product (see Product-specific condition) and may also describe a sales transaction (see Transaction-specific condition).
Product-specific condition: a condition relating to a product, e.g. Manufacturer, Features, etc. Contrast with Transaction-specific condition, defined below.
Purchase terms: Sale-related terms which are accepted by a customer. Purchase terms may comprise a product description, a sale price, and a retailer's agreement to sell a product conforming to the product description for the sale price.
Redemption information: Information specifying a specific product to be sold and information relating to the mechanics of a sales transaction, such as payment method, pickup location, and time of redemption.
Retailer: any person, group of persons, or entity that provides the sale of products to customers. Examples include a manufacturer, an online store, a traditional “brick-and-mortar” store, a sales broker, and an online “storefront” selling products offered by traditional stores.
Retailer data: data accessible by or on behalf of a retailer which can be used to determine sale prices based on received product descriptions, product descriptions based on received sale prices, and/or whether to encourage sales of particular products. Retailer data may include sales data, inventory data, demand data or subsidy data.
Sale Price: a price for which a product is sold to a customer. A sale price according to the invention is often less than a retail price, which is a price for which a product is sold through conventional channels.
Transaction-specific condition: a condition relating to details of a sales transaction, e.g. Pickup Location, Pickup Date, Payment Method, etc.
In a case that communication network 210 is the World Wide Web (“WWW”), the retail system controller 200 may include a Web server for receiving requests for Web pages (documents on the Web that typically include an HTML file and associated graphics and script files), for generating Web pages, and for transmitting Web pages over the Web. The Web server allows communication between the retail system controller 200 and the Web (communication network 210) in a manner known in the art.
Each of the customer devices 220, 230 and 240 may comprise computers, such as those based on the Intel® Pentium® processor, that are adapted to communicate with the controller 200 over the communication network 210. Each of the customer devices 220, 230 and 240 may also comprise a portable computer, a dedicated terminal, an Internet kiosk, a Personal Digital Assistant, a pager, a cellular phone, a pay phone, a video game console, an Automated Teller Machine, a slot machine, a watch, a vending machine, or any other device capable of receiving and transmitting data over the communication network 210. For example, in a case that the communication network 210 is the Web, each of the customer devices 220, 230 and 240 may execute a Web browser application for requesting, receiving, and reviewing Web pages. Any number of customer devices may be in communication with the communication network 210 and the controller 200.
Those skilled in the art will understand that devices in communication with each other need not be continually transmitting to each other. On the contrary, such devices need only transmit to each other as necessary, and may actually refrain from exchanging data most of the time. For example, a device in communication with another device via the Web may not transmit data to the other device for weeks at a time.
The controller 200 of
Also connected to the processor 250 are an input device 270 and a display 280. The input device 270 can be any device for inputting data, such as a keyboard, a touch screen, a mouse, a voice input device, an infrared port, or the like. The input device 270 can be used by a retailer to enter data for use by controller 200 in accordance with the invention. Of course, data may also be input to the controller 200 by a retailer using a device connected directly to the controller 200 or to the communication network 210. The display 280 is used to display graphics and text and may be a CRT computer monitor, a flat-panel display or another display device.
The processor 250 is also in communication with a data storage device 290. The data storage device 290 is generally a data memory and may include any appropriate combination of magnetic, optical and/or semiconductor memory. The data storage device 290 may also include, for example, Random Access Memory (RAM), Read-Only Memory (ROM), a compact disc and/or a hard disk. Furthermore, the storage device 290 and the other elements of
The data storage device 290 stores a program 300 of processor-executable process steps for basic operation of the controller 200. The processor 250 executes the process steps of the program 300 and thereby operates in accordance with the present invention, and particularly in accordance with the methods described in detail herein. The program 300 may be stored in a compressed, uncompiled and/or encrypted format. The process steps of the program 300 can be stored in the storage device 290 during manufacture of the storage device 290, can be downloaded from a compact disc or other computer-readable medium, or can be retrieved from a remote or locate source via the communication port 260 in the form of a signal having the process steps encoded thereon.
The data storage device 290 also stores processor-executable process steps for basic operation of the controller 200, such as the process steps of an operating system, a database management system and “device drivers” for allowing the controller 200 to interface with computer peripheral devices. These latter process steps are known to those skilled in the art, and need not be described in detail herein.
According to one embodiment of the present invention, the steps of the program 300 are transferred from the data storage device 290 into a main memory, such as a RAM, and executed therefrom by the processor 250. In alternative embodiments, hard-wired circuitry may be used in place of, or in combination with, processor-executable software process steps for implementation of the processes of the present invention. Thus, embodiments of the present invention are not limited to any specific combination of hardware and software. Moreover, steps performed in accordance with the invention may be allocated between the controller 200 an the customer devices 220, 230 and 240.
The storage device 290 also stores (i) an offer database 400, (ii) a customer database 500; (iii) a flexibility database 600, (iv) a product pricing database 700, (v) a product description database 800, (vi) a retailer data database 900, (vii) a product database 1000, (viii) a purchase terms database 1100, and (ix) a redemption database 1200. The databases 400 to 1200 are described in detail below and depicted with sample entries in the accompanying figures. In this regard, and as will be understood by those skilled in the art, the schematic illustrations and accompanying descriptions of the databases presented herein are merely intended to demonstrate operable and preferred systems for associating and storing information. A number of other data structures may be employed besides those suggested by the tables shown. For example, rather than using database tables as described herein, the present invention may be implemented using only rules-based methods or a combination of database tables and rules-based methods. Similarly, the illustrated entries of the databases represent sample information only; those skilled in the art will understand that the number and content of the entries can be different from those illustrated herein.
A storage device 225 is connected to the processor 221, and stores data and processor-executable process steps for the operation of the customer device 220. For example, the storage device 225 stores data and process steps of an operating system 226 which controls the operation of the customer device 220. Also stored in the storage device 225 are processor-executable process steps of a Web browser 227, which can be executed by the processor 221 to provide communication between a customer device 220 and the retail system controller 200 through the Web. Of course, depending on the nature of the connections between the customer device 220, the communication network 210, and the controller 200, other known applications or hardware may be needed for the customer device 220 to communicate with the retail system controller 200.
For each record in the customer database 500, the customer identifier 502 identifies a customer to whom data in the record correspond. In one embodiment, the customer identifier 502 serves as a link between the data in the databases used in the invention. For example, a customer identifier 404 in the offer database 400 identifies a same customer as an identical customer identifier 502 in the customer database 500.
The first name and last name of a customer are stored as the customer name 504, and contact information provided by the customer is stored as customer contact information 506. The contact information may include one or more of a street address, an e-mail address, a telephone number, a facsimile number, a pager number, or any other information using which a customer can be contacted.
The payment identifier 508 of a record includes information which can be used to charge a sale price to and/or extract payment from a customer. The tabular representation shown in
The flexibility database 600 as shown in
As described with respect to
Product Pricing Database
The product pricing database 700 according to this embodiment is used to determine a sale price based on a product description flexibility score. For example, after reception of a product description from a customer, a flexibility score is determined using a flexibility database 600 such as that described with respect to
A representation of a portion of the product pricing database 700 according to another embodiment is shown in
The tabular representation shown in
Product Description Database
The tabular representation includes, for a product category, several ranges of product discounts 810 and description broadening rules 820 corresponding to each range. In one contemplated use, an input sale price is compared to an average retail price of an input product category in order to calculate a percentage discount reflected by the input sale price. Description broadening rules 820 corresponding to the percentage discount are identified and used to create a product description. For example, using the data shown in
The product description database 800 may also be used to determine a sale price based on a received product description. In this regard, a rule 820 most closely fitting an input product description is identified, and a discount 810 associated with the identified rule is applied to a specified price to determine a sale price corresponding to the product description.
Retailer Data Database
The manufacturer 902 of a record indicates a product manufacturer, the current inventory 904 represents a number of products in current inventory produced by the manufacturer, and the forecasted current inventory 906 represents a forecasted current amount of inventory produced by the manufacturer. The current/forecasted ration 908 for a particular record reflects the current inventory 904 of the record divided by the forecasted inventory 906, and is used in one embodiment, described in detail below, to determine weighting factors 650 of the flexibility database 600 as represented in
Another tabular representation of a portion of the retailer data database 900 is illustrated in
A portion of the product database 1000 is represented in a tabular form in
For each record, the product identifier 1002 identifies a particular product available from a retailer. In one embodiment, the product identifier 1002 for a product is identical to a product identifier 910 used in the retailer data database 900 to identify the same product. The manufacturer 1004 identifies the manufacturer of the particular product, the features 1006 identify the features of the particular product, the pickup locations 1008 identify locations at which the product is available, and the product states 1010 identify physical states, such as new or used, in which the particular product is available. The minimum acceptable price 1012 indicates a minimum price at which the retail system controller 200 is permitted to sell the product, and the retail price 1014 specifies the price of the product when sold through conventional channels. Other types of data, as well as data for products other than those shown, may be included in the product database 1000.
Purchase Terms Database
The generated purchase terms 1106 include terms generated by the retail system controller 200 and accepted by the customer. For example, in a case that a transaction was initiated by customer input of a product description, the generated purchase terms 1106 would include a corresponding sale price generated by the controller 200. On the other hand, if the transaction was initiated by customer input of a sale price, the generated purchase terms 1106 would include a generated product description.
I. Retailer Determines a Sale Price Based on a Product Description
In one embodiment, a customer inputs the product description prior to step 1302. For example, a customer using the customer device 220 selects the product category Standard Television and inputs the product description “Sony”, “Magnavox”, “Toshiba”, “Picture-in-Picture”, and “New” using the input device 223 and the display 224. In this regard, the interface provided by the customer device 220 for input of the product description may present retailer-defined conditions for which values are selected by the customer using well-known graphical user interface elements such as pull-down menus, check, boxes, or radio buttons. Text-entry boxes may also be provided for customer entry of condition values. The product description may be input in any number of other ways depending on the nature of the customer device 220, such as by using voice recognition or character recognition, or from a computer-readable medium storing a product description. In another embodiment, the customer device 220 presents the customer with several product descriptions, and the customer inputs a product description prior to step 1302 by selecting one of the presented product descriptions. It should be noted that the customer device 220 used to input the product description may be located within a store operated by a retailer.
Returning to step 1302, the condition values of the received product description are stored in appropriate fields of the offer database 400 along with an offer identifier 402 generated to identify the present offer and a customer identifier 404 which identifies the customer. Also stored in association with the product description is a status 414 of “Pending System”.
In step 1304, a sale price is determined based on the received product description. Several systems for determining the sale price are discussed below with respect to
In one embodiment, the sale price is transmitted from the retail system controller 200 over the communication network 210 and back to the customer device 220 from which the product description was received in step 1302. After reception of the sale price, the customer device 220 displays the sale price to the customer using the display 224. Of course, in a case that the customer device 220 does not have a display 224, the sale price is communicated to the customer in some other manner, such as through a speaker or a printout. The sale price may also be transmitted to the customer in step 1306 using other known methods.
In another embodiment, the sale price transmitted in step 1306 is specified in terms of a discount amount, such as “25% off the retail price of the selected product”, or “$50 off the retail price of the selected product”.
Transmitted along with the sale price are other purchase terms which facilitate formation of a binding agreement between the customer and the retailer. The other purchase terms include, in one embodiment, the received product description and an offer from the retailer to sell a product conforming to the product description for the sale price. However, the controller 200 does not transmit, in step 1306, and before an agreement to purchase a product for the sale price is received, any information to the customer identifying a particular product to be sold to the customer upon completion of the transaction. The customer is also not guaranteed, before an agreement to purchase a product for the sale price is received, what specific product will be purchased. By avoiding transmission of this information, a retailer is provided with flexibility in selecting a product to sell after the customer is bound to the agreement. However, in another embodiment, specific details of two or more particular products are transmitted to the customer in step 1306 along with an inclination that an unspecified one of the particular products will be sold to the customer upon receiving an agreement from the customer. This embodiment also provides the retailer with some flexibility in selecting a product to sell after the customer is bound.
It should be noted that a particular product conforming to the product description may or may not be selected prior to step 1306.
After step 1306, it is determined in step 1308 whether or not the customer agrees to the sale price. In one embodiment, the customer is required to select an “I Agree” symbol displayed on the display 224 and the selection is transmitted to the retail system controller 200 via the communication network 210. Of course, other known systems for communicating an agreement can be used in step 1308. The customer may also be required to provide customer and payment information, such as a credit card number, so that the retailer is ensured of payment. The customer and payment information are stored in the customer database 500 along with an associated customer identifier 502. In other embodiments, the customer and payment information are received with the product description in step 1302, and a credit check/pre-authorization for the sale price is performed prior to transmission of the sale price in step 1306.
If it is determined in step 1308 that the customer does not agree to the sale price, the process steps of
In step 1310, a product is selected that conforms to the product description. One system for such selection is described below in conjunction with
The redemption information may be transmitted via the communication network 210 used to receive the product description or by another communication network. In a case that the product will be picked up by the customer at a retail location, also transmitted in step 1312 is a redemption identifier embodied in a paper voucher, a personal identification code, a frequent shopper card, or other record of purchase details. Similarly to step 1205, step 1312 may also be performed once a customer arrives at a retail location to pick up a product.
A product redemption is processed in step 1314. In one embodiment, a product redemption involves receiving a redemption identifier from a customer and presenting the customer with a corresponding product identified in the redemption database 1200. The retailer presented with the redemption identifier need not be in communication with the retail system controller 200. In this regard, the presented redemption identifier may represent, perhaps in encoded form, all the information needed for the redemption, such as the information shown in the redemption database 1200. In addition, there may be no need to process a product redemption in a case that the selected product is shipped to the customer. Details of product redemption will be discussed with respect to
It should be noted that the foregoing process steps do not describe each embodiment of the invention. For example, a conforming product may be selected any time after a product description is received. In another embodiment, a customer is presented with suggestions to change a product description after the product description is received, in a case that no conforming product is available or for other reasons. Moreover, a sale price and alternative product descriptions may be transmitted in step 1306. The alternative product descriptions may be similar to the received product description but with different condition values. In this embodiment, it would be determined in step 1308 whether the customer agreed to the sale price and to what product description the customer agreed.
The customer and the retailer benefit as a result of the
As an example of steps 1402 and 1404, a case is considered in which a flexibility score is determined for the product description “Sony”, “Magnavox”, “Toshiba”, “V-chip”, “stereo sound”, and “Picture-in-Picture”. According to the database 600 as represented in
According to another embodiment, steps 1404 and 1404 are performed using data shown in the flexibility database 600 of
As described above, a weighting factor 650 of the flexibility database 600 may reflect the desirability of a corresponding condition value in view of retailer data. For example, if a ratio 908 of current inventory 904 of a manufacturer 902 to forecasted inventory 906 of the manufacturer 902 in the retailer database 900 is 5, the retailer may wish to price the manufacturer's products so as to increase sales thereof. Accordingly, the retailer would like to associate a high flexibility score with received product descriptions including the desired manufacturer as a condition value. Therefore, a corresponding weighting factor 650 in the flexibility database 600 of
The embodiment of the flexibility database 600 illustrated in
In one embodiment, weighting factors 650 are generated for each condition value in each product category, either manually or using ratios as shown in
Returning to the flow diagram 1400, a sale price is determined in step 1406 based on the flexibility score by using the product pricing database 700. In the embodiment of the database 700 represented in
In a case that a conforming product for sale is selected prior to determination of a sale price, data shown in
It should be noted that the databases 600, 700 as shown in
In step 1506, a cumulative discount corresponding to the product description is calculated by summing the determined percentage discounts. In the previous example, the cumulative discount is 15%. Next, in step 1508, the sale price is determined by discounting a particular retail price by the cumulative discount. The particular retail price may be a retail price of a specific conforming product, an average retail price of the subject product category, or any other price.
It should be noted that the percentage discounts 770 stored in the product pricing database 700 of
In another embodiment of step 1304, the retail system controller 200 stores product descriptions and associated sales price. Accordingly, in this embodiment, a stored product description most similar to the received product description is identified and a sale price is determined to be equal to a sale price associated with the stored product description. Still other methods for determining a sale price based on a product description will be apparent to those of ordinary skill in the art.
In step 1604, a product to sell is selected from the identified conforming products. In one embodiment, transaction-specific condition values conforming to the product description are also selected in step 1604. The selection of a product and of condition values can be based on many different factors. For example, a product may be selected that optimizes profit, inventory, sales, demand, subsidies, or any other variable. In this regard, a product having excess inventory may be selected for sale even though the determined sale price reflects a substantial discount off the retail price.
A retailer may be more likely to sell a product at a discount in a case that the received product description includes an undesirable transaction-specific condition value, such as pickup at an inconvenient location, because the undesirable value can be used to mask the discount. In other words, although the product may be available at a more convenient location, the retailer can select to sell the product at the inconvenient location specified in the product description. The customer will therefore tend to feel like the discount was earned, and other customers paying more for the product but picking up the product at a convenient location will feel fairly treated. Moreover, price and brand dilution can be minimized because the discount will be attributed to the details of the transaction rather than to the product.
Many other transaction-specific conditions can be used to justify and/or mask a product discount, such as Time of Redemption and Product State. The Time of Redemption condition specifies a time period during which the customer is willing to wait before redeeming the product. In a case that a customer has specified a Time of Redemption value such as three months, the retail system controller 200 can use the customer's willingness to wait for the product as an apparent reason for offering a large price discount. Moreover, the retailer may be willing to discount a price of a product in exchange for future demand guaranteed by the three month condition value, because the retailer will be able to reorder inventory tailored to the future demand or to select a particular product in step 1310 that hasn't sold well through conventional channels.
The Product State condition may have values such as “new”, “used”, “refurbished”, “demo”, or the like. These values are useful because a retailer may want to discount a non-new product to dispose of products that aren't selling and that cannot be returned to the manufacturer. The non-new condition values may also be used to justify a discount in an attempt to minimize price dilution, brand dilution, and perceived unfairness.
A retailer may have other reasons for selecting a particular product and particular transaction-specific condition values. For example, if a new or remote pickup location is specified in a product description along with other locations, a retailer may choose to select a product to be picked up at the specified location simply to increase customer traffic at the new or remote location.
In step 1606, the purchase terms database 1100 is updated. The database 1100 is updated by creating a purchase terms identifier 1102 corresponding to the current offer identifier 1104 and by storing the generated purchase terms 1106 in conjunction with the created purchase terms identifier 1102. Next, in step 1608, the redemption database 1200 is updated by generating a redemption identifier 1202 and associating the purchase terms identifier 1204, a product identifier 1206 identifying the selected product (if any), and any transaction-specific redemption information 1208 therewith. Also associated therewith is a redemption status 1210.
In step 1704, the redemption is analyzed to validate whether all requirements for the transaction are satisfied. According to one embodiment of step 1704, the received redemption identifier is used to locate a corresponding record in the redemption database 1200 and, specifically, to locate redemption information 1208 associated with the redemption identifier. The current redemption is then analyzed in step 1704 to determine whether the current redemption satisfies the details of the redemption information 1208. For example, it is determined in step 1704 whether the customer is picking up the product at the location and time specified in the redemption information 1208, if any. In other embodiments, the received redemption identifier encodes redemption information such as the redemption information 1208 and the redemption identifier is decoded to retrieve the information used in step 1704.
It is then determined, in step 1706, whether a payment has been received from the customer. In one embodiment, this determination is made by referring to the redemption status 1210 of the corresponding record in the redemption database 1200. If payment has not been received from the customer, flow proceeds from step 1706 to step 1708 to receive payment from the customer. The payment may be in any form acceptable to the retailer, such as cash, check, credit card, debit card, or the like. In a case that the redemption is not conducted in-person, it may be easiest to receive payment by credit card. In some embodiments, payment is guaranteed with payment information in conjunction with customer acceptance of a received sale price. In this regard, the customer may be charged a penalty if he does not attempt redemption.
If the payment has been received, the customer is presented, in step 1710, with the product identified by the product identifier 1206 of the corresponding record. If the corresponding record does not include a product identifier 1206, the product is also selected in step 1710. The presentation may include handing the product to the customer or shipping the product to the customer. In this regard, the product may be a software-based product which is shipped to the customer by encoding the product in an electrical signal and sending the signal to a customer device 220 over the communication network 210 using an appropriate transmission protocol.
II. Retailer Determines A Product Description Based On A Sale Price
In more detail, a sale price is received from a customer at step 1802. The sale price may be received in any know manner, including those specified above with respect to step 1302 of
Next, in step 1804, a product description is determined based on the received sale price. In one embodiment, a database may be used which consists, for each product category, several ranges of sale prices and a product description corresponding to each range. In this embodiment, step 1804 is performed simply by identifying the range of prices in which the received sale price falls and obtaining the corresponding product description. In a variation of this embodiment, several descriptions may correspond to each range of said prices.
In another embodiment, the product description database 800 is used in step 1804 to identify a rule 802 corresponding to the received sale price. A product description is created based on the corresponding rule 802, with the condition values of the product description identifying related or similar values. For example, if the rule 802 calls for three manufacturers, three low-end or three high-end manufacturers may be included in the created product descriptions. Details of another embodiment of step 1804 will be described in conjunction with
After step 1804, the product description is transmitted to a customer in step 1806. The transmission can be performed using one of the methods discussed with respect to step 1306, or using other known methods. In one embodiment, the product description is transmitted with purchase terms which, along with a customer's agreement to the product description, creates a binding contract to purchase a product. The purchase may include the received sale price, the product description, and an offer from the retailer to sell a product conforming to the product description for the sale price. In another embodiment, the controller 200 does not transmit, in step 1806, any information to the customer identifying a particular product to be sold to the customer before an agreement to purchase a product conforming to the product description is received. The controller 200 also does not guarantee to the customer, before an agreement to purchase a product conforming to the product description is received, what specific product will be purchased. By avoiding transmission of this information, a retailer is provided with flexibility in selecting a product to sell after the customer is bound to the sale.
Alternatively, two or more particular products are identified to the customer in step 1806 along with an indication that an unspecified one of the particular products will be sold to the customer upon receiving an agreement from the customer. This embodiment also provides the retailer with some flexibility in selecting a product to sell after the customer is bound.
Next, in step 1808, it is determined whether the customer agrees to purchase a product conforming to the product description for the sale price. Similar mechanisms to those described in conjunction with step 1308 can be used to determine whether the customer has made such an agreement. If the customer does not agree, the
According to the
First, products which conform to the sales price perceived in step 1802 are identified by referring to the minimum acceptable prices 1012 of the product database 1000. Specifically, for each product of a product category received in step 1802, an associated minimum acceptable price 1012 is compared with the received sale price. The products having an associated minimum acceptable price 1012 less than the received sale price are identified as conforming products in step 1902. For example, if the received sale price is $300, products P-1000 and P-1002 of
In step 1904, products for which discounts are preferred are selected from the identified conforming products. In one embodiment, only those conforming products that are selling more slowly than forecasted are selected in step 1904. These slow-selling products can be identified from the retailer database 900 as those having a current/forecasted ratio 908 of less than unity. In the present example, the product having an identifier 910 P-1000 is selected as a product for which discounts are preferred. It should be noted that more than one product may be selected in step 1904.
Of course, other methods may be used and other retailer data considered when selecting preferred products to discount in step 1904. For example, it may be preferable to determine a desired price for each identified conforming product and to select only those products for which the desired price is less than the received sale price.
In step 1906, a product description is created which covers the products selected in step 1904. In one embodiment, the created product description includes all mutually-exclusive condition values present in each selected product. In addition, the product description includes only those mutually-inclusive conditions present in all selected products. Using these guidelines and the data representing product identifiers 1002 P-1000 and P-1002 in the product database 1000, a product description is created including the mutually-exclusive condition values “Magnavox”, “Toshiba”, “Stamford”, “Hartford”, “Teaneck”, “New”, and “Refurbished”, and the mutually-exclusive condition value “Picture-in-Picture”.
In step 1908, the created product description is broadcasted in order to mask any discount which may result from the sale of a product at the sale price. In general, the description is broadened by removing condition values for mutually-inclusive conditions and by adding condition values for mutually-exclusive conditions. By broadening the product description, any discount will appear to be due to the customer's willingness to accept the uncertainty presented by a flexible product description.
In one embodiment of step 1908, the description is broadened based on a percentage discount off a retail price reflected by the sale price. The retail price may be a retail price of a particular product to be sold to the customer, in a case that the particular product has been selected, an average retail price of the products selected in step 1802, or another retail price. As shown in the
In another embodiment of step 1908, the product description database 800 is organized by product rather than by product category. Accordingly, a product is selected to sell prior to step 1908, a percentage discount reflected by the sales price is calculated, and data in the database 800 corresponding to the product is accessed to identify appropriate description broadening rules 820 corresponding to the percentage discount 810.
The description may also be broadened in step 1908 to include mutually-exclusive condition values normally possessed by expensive products in order to encourage the customer to agree to the product description. On the other hand, the product description may be broadened to describe lower-quality items in order to give a customer agreeing to the product description a pleasant surprise when the customer learns that the product to be purchased is a better-quality product.
III. Retailer Transmits Product Description And Sale Price
Specifically, a product description and a sales price are determined in step 2002. In one embodiment, step 2002 occurs in response to customer input of a product category. The product description may be determined in step 2002 based on a manual entry or using an automated analysis of retailer data, with the sale price being determined based on the product description using any of the methods described above. Alternatively, the sale price can be determined based on a manual entry or using an automated analysis, with the product description being determined based on the sale price as described above or by using other methods.
Next, in step 2004, the product description and sale price are transmitted to a customer device 220 from which the product description and sale price can be presented to customers. For example, the product description and the sale price may be transmitted to a publicly-located kiosk or ATM machine, where they can be presented to customers approaching the kiosk or ATM machine for information or banking services. Alternatively, a retail store can include such kiosks for display of information and special deals to browsing customers. In addition, the product description and the sale price may be transmitted to electronic price tags and presented to customers thereby.
In one embodiment, the product description and the sale price are transmitted along with information to facilitate formation of a binding agreement between the customer and the retailer. The information may include the product description, the sale price and an offer from the retailer to sell a product conforming to the product description for the sales price. It is contemplated to avoid transmitting, before receiving an agreement to purchase a product conforming to the product description for the sale price, any information to the customer identifying a particular product to be sold to the customer upon completion of the transaction. It is also contemplated to avoid guaranteeing to the customer, before receiving an agreement to purchase a product conforming to the product description for the sale price, what specific product will be purchased. By avoiding transmission of this information, a retailer is provided with flexibility in selecting a product to sell after the sale is secured. In another embodiment, specific details of two or more particular products are also transmitted to the customer in step 2004 along with an indication that an unspecified one of the particular products will be sold to the customer upon receiving an agreement from the customer. This embodiment also provides the retailer with some flexibility in selecting a product to sell after a sale is secured.
Thereafter, in step 2006, it is determined whether a customer has agreed to purchase a product conforming to the product description for the sale price. The customer can indicate agreement in any know manner, including using the customer device 220 from which the sale price and the product description were presented to the customer. Steps 2008, 2010 and 2012 proceed similarly to steps 1310, 1312 and 1314 of
IV. Airline Ticket Embodiment
In step 2104, the retail system controller 200 determines a sale price corresponding to the product description. The sale price may be determined based on any of the methods discussed with respect to step 1304, or using other methods. The sale price is then transmitted to the customer in step 2106. In one embodiment, also transmitted in step 2106 is an agreement from the retailer to sell, for the sale price, an airline ticket for flights which conform to the product description.
Next, in step 2108, an agreement is received from the customer to purchase an airline ticket for flights conforming to the product description for the sale price. In one embodiment, the controller 200 does not transmit, before an agreement to purchase an airline ticket for the sale price is received, any information to the customer identifying a particular flight on which the purchased airline ticket will allow the customer to travel. The customer is also not guaranteed, before an agreement to purchase an airline ticket for the sale price is received, to what specific flight or flights the airline ticket corresponds. By avoiding transmission of this information, a retailer is provided with flexibility in selecting an airline ticket to sell after the customer is bound to the agreement. However, in another embodiment, specific details of two or more particular flights are transmitted to the customer in step 2108 along with an indication that the airline ticket that will be sold will allow the customer to travel on an unspecified one or more of the particular flights. This embodiment also provides the retailer with some flexibility in selecting a ticket to sell after the customer is bound.
An airline ticket for flights conforming to the product description is selected in step 2110. In one embodiment, the selection of the airline ticket and flights is delayed so as to give the retailer an opportunity to determine what flights will not sell out and to bind the customer to those low-demand flights. After step 2110, the identity of the selected flights is transmitted to the customer in step 2112.
It should be noted that the airline ticket may be selected at any time after the product description is received in step 2102. It should also be noted that the alternative arrangements discussed in sections I. to III. may be incorporated, where appropriate, to the steps of
The following are several examples which illustrate additional embodiments of the present invention. These examples do not constitute a definition of all possible embodiments, and those skilled in the art will understand that the present invention is applicable to many other embodiments. Further, although the following examples are briefly described for clarity, those skilled in the art will understand how to make any changes, if necessary, to the above-described embodiments to accommodate these and other embodiments and applications.
According to an additional embodiment, a customer-input product description includes condition values weighted or ranked in order of preference. The condition values may be weighted by assignment of a dollar amount to each condition value, or by using “slider” bars of a graphical user interface to indicate an amount of preference. The condition values in such a product description therefore do not reflect absolute requirements of a conforming product, but guidelines for selecting a product. Accordingly, such a product description provides significant flexibility to a retailer in selecting a product to sell. The retailer may be willing to provide a deep discount in exchange for this flexibility.
In another embodiment, the customer is bound to the transaction for a specified period but the retailer is not. Accordingly, once the customer has accepted a sale price/product description, the retailer can choose to sell a conforming product to a customer at any time within the specified period. The retailer may also choose not to sell a product to the customer during the specific period, based on inventory, demand from other buyers, competitors' prices, or other factors. Again, the retailer may be willing to offer a substantial discount in exchange for the flexibility provided by such an arrangement.
As mentioned above, the present invention advantageously allows a retailer to collect data regarding condition values desired by customers. Therefore, in one embodiment, the retailer system controller 200 includes a optimization program that orders or reorders inventory tailored to the collected data. Such a program could, for example, identify the most-commonly desired condition values and order products which conform to those condition values. In identifying the most-commonly desired condition values, the optimization program can give more weight to the condition values of received product descriptions which result in a sale, as opposed to condition values of received product descriptions which do not result in a sale.
The collected data may also be used to determine a perceived value of various condition values. The perceived values may be used in cases where the retailer cannot satisfy a received product condition by replacing unsatisfiable condition values which satisfiable condition values having similar perceived values.
The retailer system controller 200 may also include a list of preferred products to sell. In a case that a listed product conforms to a received product description, a retailer may be willing to transmit a discounted sale price. On the other hand, if no listed products conform to the received product description, the retailer may transmit suggested changes to the product description so as to persuade the customer to submit a product description to which a listed product conforms.
In another embodiment, the retailer system controller 200 considers the transaction history of a customer from whom a product description/sale price was received during determination of a sale price/product description based on the received description/price. For example, a first-time customer may be presented with a substantial discount or a narrow product description in order to retain the customer. The retail system controller 200 may also consider other customer activities during determination of a sale price/product description. In this regard, a customer may “earn” additional flexibility points, price discounts or a narrower product description by filling out a survey or by providing additional product descriptions during the sales transaction. For example, a first customer who submits a product description and agrees to complete a survey receives a lower sale price than a second customer who submit an identical product description and does not agree to complete the survey. The lower sale price may be determined by using a more favorable flexibility database 600 and/or product pricing database 700 for the first customer than the second customer. Similarly, a first customer who submits a sale price and agrees to complete a survey receives a narrow product description than a second customer who submits an identical sale price and does not agree to complete the survey. This latter scenario may be implemented by using a more favorable product description database 800 for the first customer.
In responding to reception of a product description from a customer, the retailer may present alternatives which foresee the customer's response. For example, the retailer may present a customer with a low price and a product description which conforms closely, but not exactly, to the received product description, with a high price and a product description having more desirable mutually-inclusive condition values than the received product description, and, with the received product description, a price between the high price and the low price. Such an approach increases a likelihood that an agreement will be reached, and provides the retailer with an opportunity to move undesirable products or to generate greater profit. This approach may also be incorporated into embodiments in which a sale price is received from a customer.
While the present invention has been described above with respect to several embodiments, the scope of the invention is not deemed limited to the above embodiments. Rather, the present invention covers all embodiments falling within the scope and spirit of the following claims as well as equivalent arrangements thereof.
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|Classification aux États-Unis||705/26.5, 705/30|
|Classification internationale||G06Q40/00, G06Q20/20, G06Q30/06|
|Classification coopérative||G06Q40/12, G06Q30/0621, G06Q30/06, G06Q20/204, G06Q30/0613, G06Q30/0283, G06Q30/0222, G06Q30/0208, G06Q30/0601|
|Classification européenne||G06Q30/06, G06Q20/204, G06Q30/0601, G06Q40/10, G06Q30/0621|
|21 juil. 2000||AS||Assignment|
Owner name: WALKER DIGITAL, LLC,CONNECTICUT
Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:WALKER, JAY S.;KIM, PETER;JORASCH, JAMES A.;AND OTHERS;SIGNING DATES FROM 20000622 TO 20000627;REEL/FRAME:011014/0444
|5 déc. 2000||AS||Assignment|
Owner name: JAY WALKER,CONNECTICUT
Free format text: SECURITY AGREEMENT;ASSIGNOR:WALKER DIGITAL, LLC;REEL/FRAME:011277/0178
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|21 déc. 2000||AS||Assignment|
Owner name: GAP-WD HOLDINGS, INC.,CONNECTICUT
Free format text: SECURITY INTEREST;ASSIGNOR:WALKER DIGITAL, LLC.;REEL/FRAME:011399/0501
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|31 mai 2001||AS||Assignment|
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|24 oct. 2011||AS||Assignment|
Owner name: GROUPON, INC., ILLINOIS
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Effective date: 20110712
|9 oct. 2013||FPAY||Fee payment|
Year of fee payment: 4
|8 août 2014||AS||Assignment|
Owner name: IGT, NEVADA
Free format text: LICENSE;ASSIGNORS:WALKER DIGITAL GAMING, LLC;WALKER DIGITAL GAMING HOLDING, LLC;WDG EQUITY, LLC;ANDOTHERS;REEL/FRAME:033501/0023
Effective date: 20090810